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Epidermal growth factor receptor signaling in hepatocellular carcinoma: Inflammatory activation and a new intracellular regulatory mechanism

机译:肝细胞癌中的表皮生长因子受体信号转导:炎性激活和新的细胞内调节机制

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Background/Aims: Hepatocellular carcinoma (HCC) is a chemoresistant tumor strongly associated with chronic hepatitis. Identification of molecular links connecting inflammation with cell growth/survival, and characterization of pro-tumorigenic intracellular pathways is therefore of therapeutic interest. The epidermal growth factor receptor (EGFR) signaling system stands at a crossroad between inflammatory signals and intracellular pathways associated with hepatocarcinogenesis. We investigated the regulation and activity of different components of the EGFR system, including the EGFR ligand amphiregulin (AR) and its sheddase ADAM17, and the modulation of intracellular EGFR signaling by a novel mechanism involving protein methylation. Methods: ADAM17 protein expression was examined in models of liver injury and carcinogenesis. Crosstalk between tumor necrosis factor (TNF)-α, AR and EGFR signaling was evaluated in human HCC cells and mouse hepatocytes. Modulation of EGFR signaling and biological responses by methylation reactions was evaluated in AML12 mouse hepatocytes. Results: ADAM17 was upregulated in liver injury and hepatocarcinogenesis. TNF-α triggered AR shedding and EGFR transactivation in HCC cells. AR was necessary for TNF-α activation of ERK1/2 and Akt signaling in hepatocytes. Inhibition of methylation reactions increased the ERK1/2 signal amplitude triggered by AR/EGFR and reduced DNA synthesis in AML12 cells. Conclusions: Increased ADAM17 in pre-neoplastic liver injury further supports its implication in hepatocarcinogenesis. AR release and EGFR transactivation by TNF-α constitutes a novel link between inflammatory signals and pro-tumorigenic mechanisms in liver cells. Finally, the identification of a new mechanism controlling growth factor signaling, and biological responses, involving methylation reactions within the RAS/RAF/MEK/ERK pathway, exposes a new target for antineoplastic intervention.
机译:背景/目的:肝细胞癌(HCC)是一种与慢性肝炎密切相关的化学耐药性肿瘤。因此,鉴定连接炎症与细胞生长/存活的分子联系,并鉴定促肿瘤细胞内通路的治疗意义。表皮生长因子受体(EGFR)信号系统位于炎症信号和与肝癌发生有关的细胞内途径之间的交叉路口。我们调查了EGFR系统的不同组成部分的调节和活性,包括EGFR配体双调蛋白(AR)和其脱氢酶ADAM17,以及通过涉及蛋白质甲基化的新机制对细胞内EGFR信号的调节。方法:在肝损伤和癌变模型中检测ADAM17蛋白的表达。在人类HCC细胞和小鼠肝细胞中评估了肿瘤坏死因子(TNF)-α,AR和EGFR信号传导之间的串扰。在AML12小鼠肝细胞中评估了甲基化反应对EGFR信号转导和生物学反应的调节。结果:ADAM17在肝损伤和肝癌发生中上调。 TNF-α触发了HCC细胞中的AR脱落和EGFR反式激活。在肝细胞中,AR是TNF-α激活ERK1 / 2和Akt信号传导所必需的。甲基化反应的抑制增加了AR / EGFR触发的ERK1 / 2信号幅度,并减少了AML12细胞中的DNA合成。结论:ADAM17在肿瘤前肝损伤中的增加进一步支持了其在肝癌发生中的意义。 TNF-α的AR释放和EGFR反式激活构成了肝细胞炎症信号与促肿瘤发生机制之间的新型联系。最后,确定一种新的控制生长因子信号传导和生物学反应的机制,其中涉及RAS / RAF / MEK / ERK途径内的甲基化反应,为抗肿瘤干预提供了新的靶点。

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